A Review of Shear Strength of Hybrid Fiber Reinforced Geopolymer Concrete under Ambient Condition

Hammad H. Munthir, H. M. Albegmprli
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Abstract

Geopolymer is an innovative cement substitute constructed of alkali-activated cementitious materials (AACMs). Researchers interested in improving concrete's structural resistance, toughness, and flexure tensile strength have turned their focus to geo-polymer concrete binders. To completely understand how geopolymer binders act under these circumstances, it is necessary to investigate their behavior when exposed to multiaxial stress states. The purpose of this review is to examine geopolymer cement in depth and to get a better understanding of its mechanical characteristics. In this analysis, we see that Geopolymer concrete, in particular its compressive and tensile strengths, provides higher resilience. GPC is an eco-friendly material since it reduces emissions and requires less water for curing. Incorporating hybrid polypropylene and steel fibers to ternary mixed geopolymer concrete improves its mechanical qualities.
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混杂纤维增强地聚合物混凝土环境抗剪强度研究进展
地聚合物是一种由碱活化胶凝材料(AACMs)构成的新型水泥替代品。对提高混凝土的结构阻力、韧性和弯曲拉伸强度感兴趣的研究人员已经将重点转向了土工聚合物混凝土粘结剂。为了完全了解地聚合物粘合剂在这些情况下的行为,有必要研究它们在暴露于多轴应力状态时的行为。本综述的目的是深入研究地聚合物水泥,并更好地了解其力学特性。在这个分析中,我们看到地聚合物混凝土,特别是它的抗压和抗拉强度,提供了更高的弹性。GPC是一种环保材料,因为它减少了排放,需要更少的水来固化。在三元混合地聚合物混凝土中掺入混杂聚丙烯和钢纤维,提高了混凝土的力学性能。
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